參考文獻 |
Adjdir M., Ali-Dahmane T., Friedrich F., Scherer T. and Weidler P.G.,“The synthesis of Al-MCM-41 from volclay - A low-cost Al and Si source”, Applied Clay Science, Vol. 46,NO. 2, pp. 185-189 (2009).
AlOthman Z. A. and Apblett, A.W.,“Synthesis and characterization of a hexagonal mesoporous silica with enhanced thermal and hydrothermal stabilities”Applied Surface Science , Vol. 256,NO.11, pp. 3573-3580 (2010).
Babatunde A. O. and Zhao Y. Q., “Constructive Approaches Toward Water Treatment Works Sludge Management :An International Review of Beneficial Reuses. ” , Environmental Science and Technology, Vol. 37,NO. 2, pp. 129-164 (2007).
Beck J. S., Vartuli J. C., Roth W. J., Leonowicz M. E., Kresge C. T., Schmitt K. D., Chu C. T-W., Olson D. H., Sheppard E. W., McCullen S. B., Higgins J. B., Schlenker J. L.,“A new family of mesoporous molecular sieves prepared with liquid crystal templates”, Journal of American Chemical Society, Vol. 114, NO. 27, pp. 10834-10843( 1992).
Caponetti E., Minoja A.and Saladino M. L.,“Characterization of Nd–MCM-41 obtained by impregnation”, Microporous and Mesoporous Materials, Vol. 113,NO. 1-3, pp. 490-498 (2008).
Ciesla U. and Schüth F., “Review of Ordered mesoporous materials”, Microporous and Mesoporous Materials, Vol. 27, NO. 2, pp.131-149 (1999).
Chang H.L., Chun C.M., Aksay I.A. and Shih W.H.,“Conversion of fly ash into mesoporous aluminosilicate”, Industrial & Engineering Chemistry Research, Vol. 38, NO. 3 ,pp.973-977 (1999).
Chandrasekar G., You K.S., Ahn J.W. and Ahn W.S.,“Synthesis of hexagonal and cubic mesoporous silica using power plant bottom ash”, Microporous and Mesoporous Materials, Vol. 111, NO.1-8 ,pp.455-462 (2008).
Chen L.Y., Jaenicke S. and Chuah G.K., “Thermal and hydrothermal stability of framework-substituted MCM-41 mesoporous materials”, Microporous Materials, Vol. 12, NO. 4-6, pp. 323-330 (1997).
Chen W., Zhang A. M., Yan X., Han D., “Synthesis of well-aligned carbon nanotubes on MCM-41”,Studies in Surface Science and Catalysis, Vol. 142, pp. 1237-1244 (2002).
Derkowski A., Franus W., Waniak-Nowicka H. and Czimerova A., “Textural properties vs. CEC and EGME retention of Na-X zeolite prepared from fly ash at room temperature”International Journal of Mineral Processing, Vol. 82, NO. 2, pp. 57-68 (2007).
Dharmappa H. B., Hasia A. and Hagare P., “Water Treatment Plant Residuals Management”, Water science and Technology, Vol.35, NO.8,pp.45-56 (1997).
Eimer G.A., Pierella L.B., Monti G.A. and Anunziata O.A.,“Preparation and characterization of aluminium-containing MCM-41”Catalysis Communications ,Vol. 4, NO. 3 ,pp.118-123 (2003).
Gonzalez F., Pesquera C., Perdigon A. and Blanco C.,“Synthesis, characterization and catalytic performance of Al-MCM-41 mesoporous materials”Applied Surface Science, Vol.255, NO. 17 ,pp.7825-7830 (2009).
Hoffmann F., Cornelius M., Morell J., and Fröba M. , “Silica-Based Mesoporous Organic-Inorganic Hybrid Materials ” ,Angewandte Chemie-International, Vol. 45, NO. 20 ,pp.3216-3251 (2006).
Holler H. and Wirsching U.,“Zeolites formation from fly ash”,Mineral, Vol. 1, NO. 63 ,pp.21 (1985).
Holmerg K., Jönsson B., Kronberg B. and Lindman B., “Surfactants and Polymers in Aqueous Solution” 2nd ed., John Wiley & Sons Ltd, England (2003).
Kawi S. and Shen S. C., “Post-synthesis alumination of Si-MCM-41 by A1(NO3)3(II): Enhancement of hydrothermal, mechanical and chemical stabilities”, Studies in Surface Science and Catalysis, Vol.129, NO.1-2 ,pp.227-234 (2000).
Kumar P., Mal N., Oumi Y., Yamana K. and Sano T.,“Mesoporous materials prepared using coal fly ash as the silicon and aluminium source”, Journal of Materials Chemistry, Vol. 11, NO. 12 ,pp.3285-3290 (2001).
McVain J. W. “The Sorption of Gases and Vapors by solids”,Ruthedge and Sons, London, Chapter 5 1932.
Misran H., Singh R., Begum S. and Yarmo M.A.,“Processing of mesoporous silica materials (MCM-41) from coal fly ash”,Journal of Materials Processing Technology, Vol. 186, NO. 1-3 ,pp.8-13 (2007).
Molina A. and Poole, C. “A comparative study using two methods to produce zeolites from fly ash,” Minerals Engineering, Vol. 17, No. 2, pp. 167-173 (2004)
Namba S. and Mochizuki A.,“Effect of auxiliary chemicals on preparation of silica MCM-41” Research on Chemical Intermediates, Vol. 24, NO. 5 ,pp.561-570 (1998).
Schubert U. and Husing N., “Synthesis of inorganic materials” chapter4, Wiley-Interscience, New York (2000).
Selvaraj M., Pandurangan A., Seshadri K.S., Sinha P.K. and Lal K.B.,“Synthesis, characterization and catalytic application of MCM-41 mesoporous molecular sieves containing Zn and Al”,Applied Catalysis A-General, Vol. 242, NO. 2 , pp.347-364 (2002).
Sing K.S.W., Everett D.H., Haul R.A.W. , Moscou L., Pierotti R.A., Rouquerol J. and Siemieniewska. T., "Reporting Physisorption Data For Gas/Solid Systems with Special Reference to the Determination of Surface Area and Porosity", Pure and Applied Chemistry, Vol. 54, NO. 11 , pp.2201-1982 (1982).
Souza M.J.B., Antonio A. S., Pedrosa A.M.G., Marinkovic B.A., Jardim P.M. and Morgado E., “Textural features of highly ordered Al-MCM-41 molecular sieve studied by X-ray diffraction, nitrogen adsorption and transmission electron microscopy”, Materials Letters, Vol. 60, NO.21-22 pp. 2682-2685 (2006).
Wan Y., Ma H.X., Wang Z. and Zhou W., “Synthesis of MCM-41 with high content of framework aluminum using mixed templates”, Microporous and Mesoporous Materials, Vol.76, NO.13 pp.35-40 (2004).
Xu J.Q., Chu W. and Luo S.Z.,“Synthesis and characterization of mesoporous V-MCM-41 molecular sieves with good hydrothermal and thermal stability”, Journal of Molecular Catalysis A-Chemical, Vol.256, NO.1-2 PP.48-56 (2006).
Yang H.M., Deng Y.H., Du C.F. and Jin S.M.,“Novel synthesis of ordered mesoporous materials Al-MCM-41 from bentonite ”,Applied Clay Science ,Vol. 47, NO. 3-4 ,pp.351-355 (2010).
Ye Y.P., Zeng X.Q., Qian W.L. and Wang M.W.,“Synthesis of pure zeolites from supersaturated silicon and aluminum alkali extracts from fused coal fly ash”,Fuel, Vol. 87, NO. 10-11 ,pp.1880-1886 (2008).
Ying, J.Y. , Mehnert, C. P. and Wong, M.S. “Synthesis and applications of supramolecular-templated mesoporous materials.”, Angewandte Chemie-International Edition, Vol. 38, NO. 1-2 ,pp.56-77 (1999).
Yu H.H., Xue X.X. and Huang D.W., “Synthesis of mesoporous silica materials (MCM-41) from iron ore tailings”, Materials Research Bulletin. Vol. 44, NO. 11 ,pp.2112-2115 (2009).
Yuan R., Guan R., Shen W. and Zheng J.,“Photocatalytic degradation of methylene blue by combination of TiO2 and activated carbon fibers”,Journal of Colloid and Interface Science, Vol.282, No.1,pp.87-91 (2005).
王書駿,「MCM-41孔徑控制之研究」,碩士論文,國立中央大學化學工程與材料工程研究所,中壢市(2005)。
朱明瑜,「添加廢玻璃砂於排水瀝青混凝土成效之影響」,碩士論文,國立成功大學土木工程研究所,台南市(2008)。
林忠逸,「水處理工程廢棄污泥及煉鋼廢爐渣燒製環保水泥之材料特性研究」,碩士論文,國立中央大學環境工程研究所,中壢市(2003)。
林聖寰,「淨水污泥取代黏土作為水泥生料對卜特蘭水泥影響之研究」,碩士論文,國立交通大學環境工程研究所,新竹市(2003)。
林嘉玲,「摻配都會下水污泥與廢玻璃燒製水庫淤泥滑材研究」,碩士論文,南亞技術學院材料應用科技研究所,中壢市 (2011)。
洪嘉祥,「熱調理對污泥流變性質與脫水效率之相關研究」,碩士論文,國立台灣大學環境工程學研究所,台北市 (2000)。
侯博震,「廢玻璃應用於再生瀝青混凝士之研究」,碩士論文,國立雲林科技大學營建工程系,雲林(2003)。
姜佳伶,「淨水場沉澱及過濾單元濁度去除及其衍生廢污量之研究」,碩士論文,國立中央大學環境工程研究所,中壢市(2007)。
陳宜晶,「利用添加劑提昇淨水污泥燒結之材料品質研究」,碩士論文,逢甲大學環境工程與科學學系研究所,台中市(2003)。
楊淑雯,「中孔洞分子篩 SBA-15 之表面修飾」,碩士論文,國立中央大學化學研究所,中壢市(2004)。
黃子光,「下水污泥合成中孔徑分子篩及表面改質吸附重金屬之研究」,碩士論文,國立中央大學環境工程研究所,中壢市(2010)。
劉又瑞,「淨水污泥混合營建廢棄土製磚及燒結人造骨材的研究」,碩士論文,國立交通大學環境工程研究所,新竹市(2002)。
劉錡樺,「水處理污泥轉換活性碳-沸石複合吸附材料之研究」,碩士論文,國立中央大學環境工程研究所,中壢市(2010)。
蔡尚晏,「水庫淤泥添加玻璃粉燒製輕質骨材之研究」,碩士論文,國立成功大學資源工程研究所,台南市(2008)。
顏笠安,「淨水場混凝污泥質量特性與脫水泥餅再利用初步評估」,碩士論文,國立中央大學土木工程研究所,中壢市(2009)。
王釿鋊、溫宗國 譯編,循環經濟與節能減碳,財團法人中技社能環智庫叢書02,台灣,第53-68頁(2011)。
吳陽龍,「99年臺北自來水事業統計年報」,臺北自來水事業處編印,台北市,(2011)第11頁。
洪仁陽、張敏超、邵信、張王冠,「淨水廠之污泥減量技術」,自來水會刊第二十二卷第一、二期,第61-66頁(2003)。
徐如人、龐文琴,“無機合成與製備化學”,五南圖書出版股份有限公司,台北市(2004)
許磊,王公慰,魏迎旭,齊越,「MCM-41介孔分子篩合成研究 Ι.水熱合成法」催化學報,第20卷,第3期,第247~250頁
康世芳,「淨水污泥餅再利用技術調查及應用於台北自來水事業處淨水場可行性評估」,台北自來水事業處委託研究計劃研究報告書,台北(2001)。
行政院環境保護署,網頁資料,網址:http://www.epa.gov.tw/。
經濟部水利署,網頁資料,網址:http://www.wra.gov.tw/。
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